Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
  • Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
  • Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
  • Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit
  • Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit

Cabos de fibra internos da série GJFJV: opções de modo único OM3 / OM4 multimodo e OS2. Jaqueta LSZH, insensível a curvas, ideal para data centers e redes corporativas.
  • Superior Flame Retardancy: Complies with industry standards for enhanced safety.

  • Excellent Temperature Resistance: Ensures stable performance across varying conditions.

  • Flexible & Easy to Strip: Simplifies installation and maintenance.

  • High-Strength Kevlar Reinforcement: Enhances durability and tensile strength.

  • Compact Bend Radius: Enables easy routing in tight spaces.

  • Customizable Solutions: Tailored to meet diverse market and client requirements.

what is gjfjv indoor fiber optic cable

The GJFJV indoor fiber optic cable, denoted by the model name "GJFJV" in accordance with industry standards (where "GJ" signifies indoor cable, "F" denotes a non-metallic strength member, "J" refers to a tight-buffered structure, and "V" indicates a flame-retardant PVC jacket), is a high-performance communication cable meticulously designed for a wide range of indoor network applications. It offers exceptional reliability and flexibility. The cable's structure typically incorporates a single 600μm or 900μm tight-buffered fiber core, which provides an extra layer of protection and makes it exceptionally easy to strip during termination. This fiber is wrapped with a layer of high-strength aramid yarn (commonly known by the brand name Kevlar) as a strength member to enhance tensile strength and durability. The outermost layer is a durable, flame-retardant jacket, available in materials like PVC (polyvinyl chloride) or LSZH (Low Smoke Zero Halogen), which ensures fire safety and compliance with building codes. This comprehensive design results in a round, compact cable that is not only durable and flexible with an excellent bend radius but also lightweight and easy to handle. Consequently, the GJFJV cable is an optimal choice for a diverse array of indoor communication scenarios, including its primary roles as fiber optic jumpers (patch cords) and pigtails, as well as for backbone cabling in data centers, intra-building distribution in risers and equipment rooms, and Fiber to the x (FTTx) deployments to the home or desk.

GJFJV Indoor Fiber Optic Cable Parâmetros de especificação

Performance Parameters
Number of coresOptical cable outer diameter (mm)Cable weight (kg)Allow stretching (N)Flattening force (N/100mm)Bending radius (mm)Applicable temperature (°C)



Short termLong termShort termLong termShort termLong term
023.415.00600200100020020D10D-20 ~ +60
044.022.00600200100020020D10D-20 ~ +60
064.023.00600200100020020D10D-20 ~ +60
085.027.00600200100020020D10D-20 ~ +60
105.530.00600200100020020D10D-20 ~ +60
126.035.00600200100020020D10D-20 ~ +60

Estrutura e Composição do Produto

Ghigh-Quality Aramid Yamint bresplertartings

LSZH Outer Sheath

Grade ARibt mnleceratiomRaltintede delats

Rleewed Ictaltete loncerationRostecler and puiiscans

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Benefícios de  GJFJV Indoor Fiber Optic Cable

Flame Retardancy & Temperature Resistance

Complies with industry safety standards for superior flame retardancy and maintains stable performance across varying temperature conditions.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Flexibility, Easy Stripping & Compact Bend Radius

Highly flexible and easy to strip, simplifying installation and maintenance, while the compact bend radius enables convenient routing in tight spaces.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio2)

High-Strength Kevlar Reinforcement

Enhanced with high-strength Kevlar yarn, providing excellent tensile strength and mechanical durability for long-term reliability.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio3)

Customizable & Versatile Solutions

Supports customizable jacket materials (PVC, LSZH) and configurations to meet diverse client requirements and indoor communication scenarios.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio4)

Aplicações de Engenharia  GJFJV Indoor Fiber Optic Cable

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Data Center & High‑Density Backbone Cabling

GJFJV cables are widely used as indoor backbone cabling in data centers, connecting distribution frames, top‑of‑rack switches, and storage equipment. The tight‑buffered design with 900µm fibers and aramid yarn reinforcement ensures excellent flexibility and strippability, allowing direct termination to patch panels without fan‑out kits. With flame‑retardant LSZH or PVC jackets meeting riser and plenum fire safety ratings, the cable is fully compliant with strict codes for raised‑floor environments and equipment aisles. It supports high‑capacity data transmission across OS2 single‑mode and OM3/OM4 multimode fibers, making it ideal for 10G, 25G, and 40G backbone links within large‑scale data centers.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio2)

Building Riser, Plenum & Intra‑Floor Distribution

For vertical cabling within multi‑story buildings, GJFJV cables are installed in risers, plenum spaces, inter‑floor conduits, and cable trays. The small outer diameter (from 2.0mm simplex to 6.8mm for 12‑core designs) reduces conduit congestion and simplifies pulling through tight pathways. The cable structure withstands long‑term tensile loads of up to 80‑130N and short‑term crush resistance of 500‑1000N/100mm, ensuring reliable performance even under mechanical stress during installation. Available in riser‑rated and plenum‑rated versions, it is suitable for IDF/MDF rooms, telecom closets, and campus building interconnections without requiring expensive transition hardware between different cable types.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio3)

FTTx & Fiber‑to‑the‑Desk (FTTD) Deployments

GJFJV cables serve as efficient indoor drop cables in FTTB, FTTH, and Fiber‑to‑the‑Desk architectures. The cable runs from building entry points to individual workstations, enterprise offices, and residential units, delivering high‑bandwidth connectivity directly to end‑users. With excellent bend radius performance (20D dynamic, 10D static) and superior strippability, the cable can be quickly terminated to LC/SC/MPO connectors on site, eliminating the need for transition connector boxes and reducing overall installation costs. The availability of bend‑insensitive fiber further supports small‑radius routing in confined furniture pathways and corner installations.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio3)

Communication Equipment Room & ODF Interconnection

In central offices and telecommunication equipment rooms, GJFJV cables provide direct optical connections between communication devices such as routers, switches, transceivers, and optical distribution frames. The tight‑buffered construction protects fibers during repeated handling in patching areas, while the cable's flexibility allows neat routing within crowded cable management trays and ODF cassettes. No gel cleaning is required prior to termination, simplifying field work and reducing maintenance time. With operating temperatures ranging from -20°C to +60°C, the cable maintains stable transmission performance even in equipment rooms with variable thermal loads. This makes it a reliable choice for intra‑facility fiber patching and cross‑connect applications.

Engineered with 900µm tight‑buffered fibers, aramid yarn strength members, and PVC/LSZH jackets, the GJFJV indoor cable combines flexibility, fire safety, and easy termination. Its compact dimensions, fire safety compliance, and support for both single‑mode and multimode fiber types make it a versatile solution for data centers, building backbones, FTTx deployments, and patch cord manufacturing.

Envio & Embalagem

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio2)

Packaging Detalhes

Cada rolo contém 1 5 KM de cabo, normalmente embalado em tambores de aço. Soluções de embalagem personalizadas estão disponíveis mediante solicitação do cliente.


Marcação da Bainha

O recuo da folha branca quente é aplicado em intervalos de 1 metro com as seguintes informações:

A. Nome do fornecedor: Guanglian (ou conforme especificado pelo cliente)
b. Código padrão incluindo tipo de produto, tipo de fibra e contagem de fibra
c. Ano de fabricação (válido por 7 anos)
d. Indicação do comprimento em metros


Porto de embarque

Portos disponíveis: Qingdao, Guangzhou, Shenzhen


Tempo de entrega estimado

Quantity (KM)Estimated Delivery Time
1–300Aprox. 15 dias
≥300Prazo de entrega a negociar



Nota

Os detalhes da embalagem acima são apenas para referência. O tamanho e o peso finais da embalagem serão confirmados antes do envio.



Comparação de produtos:

GJFJV vs GJFJH vs GJFJBV

Feature / DimensionGJFJV (PVC Jacket, Indoor Distribution)GJFJH (LSZH Jacket, Indoor Distribution)GJFJBV (Duplex Flat Cable)
Structural FeaturesTight-buffered 900μm or 600μm fibers (single‑mode or multi‑mode) [7†L4-L5]. Aramid yarn strength member layer [6†L4-L6]. PVC outer sheath [7†L5-L6]. Non‑metallic construction.Same internal construction as GJFJV: tight-buffered fibers with aramid yarn strength member [4†L20-L22]. LSZH outer sheath instead of PVC. The “H” in GJFJH stands for LSZH (Low Smoke Zero Halogen) [1†L11-L12]. Non‑metallic construction.Two 900μm or 600μm tight-buffered fibers, each with an inner PVC sheath, covered with aramid yarns, extruded with a flat PVC or LSZH outer sheath [2†L5-L7]. “Figure‑8” cross‑section or flat duplex structure [13†L6-L7].
Strength MemberAramid yarns applied evenly over each tight‑buffered fiber or over the bundle [6†L4-L6]. High tensile strength, flexibility.Aramid yarns (same as GJFJV). Provides excellent tensile performance and bend protection.Aramid yarns wrapped around each tight‑buffered fiber unit, plus additional aramid in the outer sheath [12†L10-L11]. Dual-layer reinforcement.
Outer Sheath MaterialPVC (Polyvinyl Chloride) – flame‑retardant but releases dense smoke and halogen gases when burned [1†L17-L18]. Standard UL OFNR/OFNP rated [6†L18-L19].LSZH (Low Smoke Zero Halogen) – flame‑retardant, low smoke emission, halogen‑free, self‑extinguishing [1†L11-L12]. Suitable for fire‑sensitive areas.PVC (standard) or LSZH (on request). Flat outer sheath, available in both materials [13†L5-L7].
Fiber Core Capacity2 – 144 cores, up to 288 cores with micro‑distribution design [9†L3-L4]. 2 – 24 cores typical for standard bundle designs [6†L6-L7].2 – 144 cores, same core count range as GJFJV [9†L3-L4].2 cores (duplex) – purpose‑built for patch cords and jumper assemblies [12†L13-L14].
Typical ApplicationsIndoor distribution backbone, building riser and plenum cabling, equipment room patching, entrance facilities, FTTB (Fiber‑to‑the‑Building) [6†L12-L13]. Also used for pigtail/jumper assemblies [3†L30-L31].Same applications as GJFJV, but specifically required for fire‑rated environments: buildings with strict fire safety codes, public spaces, tunnels, data centers, high‑rise risers. The “H” (LSZH) is mandatory when low smoke and halogen‑free properties are specified by code.Duplex optical fiber connecting jumpers or pigtails, indoor riser level and vertical cabling, interconnection between instruments and communication equipment [12†L13-L15]. Also used for desktop fiber connections (FTTD – Fiber‑to‑the‑Desktop).
Engineering Pros① Lower cost than LSZH – PVC jacket most economical indoor distribution option [3†L15-L17]; ② Good flame‑retardancy (UL OFNR/OFNP rated) [6†L18-L19]; ③ Excellent strippability – tight‑buffered fibers allow direct connector termination without messy gel cleanup [6†L14-L15]; ④ Wide core count range (2–144 cores) suitable for building backbone; ⑤ Non‑metallic – no EMI concerns, no grounding required; ⑥ Lightweight, small diameter, flexible for duct/tray installation [6†L14].① LSZH jacket – low smoke, halogen‑free, self‑extinguishing – safe for fire‑sensitive spaces, meets strict building codes for plenum/riser [1†L23-L24]; ② Same excellent strippability as GJFJV – tight‑buffered fibers allow direct termination [4†L13-L14]; ③ Non‑metallic – no grounding required; ④ Good tensile performance from aramid yarn reinforcement; ⑤ All‑dry design – no gel, clean handling [4†L13-L14].① Compact flat structure – fibres arranged in parallel, easy to route in tight spaces [12†L11-L12]; ② Very low cost for 2‑core applications, economical for short‑distance connections; ③ Good flame‑retardant performance (PVC or LSZH) [13†L12-L13]; ④ Excellent flexibility and strippability – individual fibers easily accessed for connector termination [12†L9-L10]; ⑤ Low weight, easy to handle for patch cord manufacturing [12†L16-L18].
Engineering Cons① PVC sheath emits dense smoke and toxic halogen gases when burned – not suitable for fire‑sensitive public spaces, high‑rise buildings, tunnels, or data centers where LSZH is required [1†L17-L18]; ② Lower UV resistance than LSZH for mixed indoor/outdoor use (not intended for outdoor exposure); ③ Higher smoke emission in fire event compared to LSZH.① Higher cost than PVC (GJFJV) due to LSZH material and stricter manufacturing [3†L15-L17]; ② LSZH sheath slightly less flexible than PVC in cold environments; ③ Lower UV resistance than PE – not rated for outdoor UV exposure without additional protection; ④ Requires careful compliance verification for building code approval (LSZH often mandated).① Limited to 2 cores – not suitable for building backbone or multi‑core distribution [12†L13-L14]; ② Flat shape less suited for bundled installations in conduits or cable trays (higher pulling resistance than round cables) [13†L15-L16]; ③ Lower tensile strength (100–200N) than GJFJV/GJFJH distribution cables [12†L18]; ④ Larger bend radius (60/30mm) than round cables, less flexible for tight corner routing [12†L18]; ⑤ PVC jacket not flame‑retardant to LSZH level – may not meet strict fire codes for riser/plenum spaces.
Flame RetardancyUL OFNR/OFNP rated – flame‑retardant, but halogen‑emitting. Suitable for riser and plenum spaces where halogen emission is not prohibited by code [6†L18-L19].LSZH – low smoke, halogen‑free, self‑extinguishing. Meets IEC 60754‑2 for low halogen emission, IEC 61034 for low smoke [1†L23-L24]. Mandatory for fire‑sensitive public spaces, high‑rise buildings, tunnels, data centers.PVC flame‑retardant (UL94 V‑0); LSZH variant available – low smoke, halogen‑free upon request [13†L5-L7].
All‑Dielectric (Non‑Metallic)Yes – no metal components, immune to EMI, no grounding required.Yes – no metal components, immune to EMI, no grounding required.Yes – no metal components (unless specified otherwise).

GJFJV Indoor Fiber Optic Cable  Guia de Seleção

Installation ease and routing constraints:

For building riser and horizontal cabling requiring a balance of cost, core count, and ease of termination, GJFJV offers the most economical solution where fire codes permit PVC. For the same applications requiring fire‑rated LSZH, GJFJH is the correct choice despite the higher material cost [3†L15-L17].

For patch cord assemblies and equipment‑to‑instrument jumpers requiring 2‑core simplex or duplex connections, GJFJBV is the best choice. Its flat structure allows compact fibre arrangement, but its larger bend radius (60/30mm) and lower tensile strength (100–200N) make it unsuitable for backbone pulling [12†L18].

For installations with tight bend radius requirements, round distribution cables (GJFJV/GJFJH) offer superior flexibility (20D dynamic/10D static) compared to flat duplex cables [6†L25].

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Baixar Catálogo de Produtos YRTFIBER

Tiro Real De Fábrica

Automated Packaging & Shipping Lines

High-speed automatic coiling, banding, and cartoning lines reduce lead times and ensure consistent, damage‑free delivery to global customers.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio1)

Buffer Stock & Spare Parts Warehouse

A dedicated inventory area for loose tubes, aramid yarn, and LSZH compounds guarantees uninterrupted production and rapid response to urgent orders.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio2)

High‑Volume Production Capacity

Multiple parallel sheathing lines and stranding towers operate 24/7, enabling monthly output of over 2,0000 km of GJYWFJH and similar cables.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio3)

Advanced Manufacturing Lines

Our factory is equipped with fully automated optical fiber coloring, loose tube extrusion, stranding, and double-sheathing lines.

Cabo de fibra óptica interno GJFJV | OM3 / OM4 / OS2 | Rede Gigabit(Pacote e Envio4)

Perguntas mais frequentes e consulta rápida

GJFJV Indoor Fiber Optic Cable  FAQ

Q: Que tipos de fibra inclui a série GJFVJ?
R: Disponível nas versões multimodo OM3 / OM4 e único modo OS2.


Q: Qual é a classificação de fogo dos cabos GJFVJ?
R: Possui jaqueta retardadora de chama LSZH (Low Smoke Zero Halogen).


Q: Ele suporta redes 10G?
R: Sim, o OM4 suporta transmissão de 10G até 150m.


Q: Qual é o raio de curvatura mínimo?
A: 7,5 mm (estático) / 15 mm (dinâmico) com design insensível a curvas.


Q: Os conectores podem ser personalizados?
R: Suporta conectores LC / SC / FC com opções de polimento UPC / APC.


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